Aposematic animals rely on diverse secondary metabolites for defence. Various hypotheses, such as competition, life history and multifunctionality, have been posited to explain defence variability and diversity. We investigate the compound selectivity hypothesis using large milkweed bugs, , to determine if distinct cardenolides vary in toxicity to different predators. We quantify cardenolides in the bug's defensive secretions and body tissues and test the individual compounds against predator target sites, the Na/K-ATPases, that are predicted to differ in sensitivity. Frugoside, gofruside, glucopyranosyl frugoside and glucopyranosyl gofruside were the dominant cardenolides in the body tissues of the insects, whereas the two monoglycosidic cardenolides-frugoside and gofruside-were the most abundant in the defensive fluid. These monoglycosidic cardenolides were highly toxic (IC < 1 μM) to an invertebrate and a sensitive vertebrate enzyme, in comparison to the glucosylated compounds. Gofruside was the weakest inhibitor for a putatively resistant vertebrate predator. Glucopyranosyl calotropin, found in only 60% of bugs, was also an effective inhibitor of sensitive vertebrate enzymes. Our results suggest that the compounds sequestered by probably provide consistency in protection against a range of predators and underscore the need to consider predator communities in prey defence evolution.
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http://dx.doi.org/10.1098/rsos.231735 | DOI Listing |
Mol Med Rep
March 2025
Key Laboratory of Immune Microenvironment and Inflammatory Disease Research in Universities of Shandong Province, School of Basic Medical Sciences, Shandong Second Medical University, Weifang, Shandong 261053, P.R. China.
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Department of Anatomical Sciences, St. George's University, School of Medicine, Grenada, West Indies; Department of Pathology, St. George's University, School of Medicine, Grenada, West Indies; Department of Clinical Anatomy, Mayo Clinic, Rochester, Minnesota; Nicolaus Copernicus Superior School, College of Medical Sciences, Olsztyn, Poland. Electronic address:
Vascular occlusive diseases remain a major health burden worldwide, necessitating a deeper understanding of the adaptive responses that mitigate their impact. Arteriogenesis, the growth and remodeling of collateral vessels in response to arterial occlusion, is a vital defense mechanism that counteracts fluid shear stress-induced vascular stenosis or occlusion. While physical factors driving arteriogenesis have been extensively studied, the specific cellular mediators involved are poorly understood.
View Article and Find Full Text PDFPLoS One
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Trauma Research, Swedish Medical Center, Englewood, Colorado, United States of America.
Previous abdominal surgery (PAS) increases risk of small bowel obstruction (SBO) due to adhesions, and appendectomy (appy) is an independent risk factor for abdominal adhesion-related complications. Peritoneal inflammation, e.g.
View Article and Find Full Text PDFCrit Care Med
January 2025
Department of Medicine, University of Wisconsin School of Medicine & Public Health, Madison, WI.
Objectives: Diabetes mellitus has been associated with greater difficulty of tracheal intubation in the operating room. This relationship has not been examined for tracheal intubation of critically ill adults. We examined whether diabetes mellitus was independently associated with the time from induction of anesthesia to intubation of the trachea among critically ill adults.
View Article and Find Full Text PDFAm J Physiol Lung Cell Mol Physiol
January 2025
Institute of Physiology, Charité-Universitätsmedizin Berlin, Berlin, Germany.
Lung infection is one of the leading causes of morbidity and mortality worldwide. Even with appropriate antibiotic and antiviral treatment, mortality in hospitalized patients often exceeds 10%, highlighting the need for the development of new therapeutic strategies. Of late, cystic fibrosis transmembrane conductance regulator (CFTR) is - in addition to its well-established roles in the lung airway and extrapulmonary organs - increasingly recognized as a key regulator of alveolar homeostasis and defense.
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